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用于重组蛋白表达的烟草毛状根,从何入手?一项系统综述。

Nicotiana hairy roots for recombinant protein expression, where to start? A systematic review.

作者信息

Aragão M M, Alvarez M A, Caiafa L, Santos M O

机构信息

Departamento de Biologia, ICB - Universidade Federal de Juiz de Fora,, R. José Lourenço Kelmer, S/N, Juiz de Fora, MG, Brazil.

CONICET - Universidade Maimónides (CEBBAD), Hidalgo 775, Lab 603, Buenos Aires, Argentina.

出版信息

Mol Biol Rep. 2023 May;50(5):4587-4604. doi: 10.1007/s11033-023-08360-1. Epub 2023 Mar 14.

Abstract

BACKGROUND

Hairy roots are a plant-tissue culture raised by Rhizobium rhizogenes infection (formerly known as Agrobacterium rhizogenes). Nowadays, these roots have been gaining more space in biotechnology due to their benefits for the recombinant expression of valuables proteins; it includes simplified downstream processing, protein rhizosecretion, and scalability in bioreactors. However, due to methodological inconsistency among reports, the tissue platform is still a promising technology.

METHODS AND RESULTS

In the current paper, we propose the first step to overcome this issue through a systematic review of studies that employ Nicotiana hairy roots for recombinant expression. We conducted a qualitative synthesis of 36 out of 387 publications initially selected. Following the PRISMA procedure, all papers were assessed for exclusion and inclusion criteria. Multiple points of root culture were explored, including transformation methods, root growth curve, external additives, and scale-up with bioreactors to determine which approaches performed best and what is still required to achieve a robust protocol.

CONCLUSION

The information presented here may help researchers who want to work with hairy roots in their laboratories trace a successful path to appraisal the literature status.

摘要

背景

毛状根是由发根农杆菌(以前称为根癌土壤杆菌)感染引发的植物组织培养物。如今,由于其在重组表达有价值蛋白质方面的优势,这些根在生物技术领域占据了越来越重要的地位;这些优势包括简化下游加工、蛋白质根分泌以及在生物反应器中的可扩展性。然而,由于各报告之间方法的不一致性,该组织平台仍然是一项很有前景的技术。

方法与结果

在本文中,我们通过对利用烟草毛状根进行重组表达的研究进行系统综述,提出了克服这一问题的第一步。我们对最初筛选出的387篇出版物中的36篇进行了定性综合分析。按照PRISMA程序,对所有论文进行了排除和纳入标准评估。探索了根培养的多个方面,包括转化方法、根生长曲线、外部添加剂以及生物反应器放大培养,以确定哪种方法效果最佳,以及实现稳健方案仍需要哪些条件。

结论

本文提供的信息可能有助于那些想在实验室中研究毛状根的研究人员找到一条成功的途径来评估文献现状。

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